2011Unpublished venueRequires access

Effect of inductive power technology systems on battery-electric vehicle design

Andre Lorico, Joachim Taiber, Tamer Yanni

Open publisher page 5 citations

Abstract

As battery-electric vehicle technology advances as a viable alternative to internal combustion engine vehicles, consumer acceptance becomes a critical factor for the future of these vehicles, with driving range and vehicle cost being the preeminent parameters of concern. Unique to battery-electric vehicles is the direct inverse relationship between these parameters. Battery pack costs often account for over one half of the vehicle cost, with the vehicle range determined by the capacity (and thus cost) of the battery pack as well. An increase in vehicle range would therefore result in a significant increase in battery pack cost, and vice versa. In addition, the relationship between overall vehicle mass and total range further inversely couples vehicle cost and range. It is apparent then that a fundamental trade-off will always exist between the two parameters, unless an additional factor is added to decouple the direct relationship between them. This study analytically investigates the aforementioned relationships unique to battery-electric vehicles and proposes inductively coupled power transfer (ICPT) as a potential solution and decoupling method for the vehicle range - vehicle cost relationship.

About this research paper

What this paper is about

As battery-electric vehicle technology advances as a viable alternative to internal combustion engine vehicles, consumer acceptance becomes a critical factor for the future of these vehicles, with driving range and vehicle cost being the preeminent parameters of concern. Unique to battery-electric vehicles is the direct inverse relationship between these parameters. Battery pack costs often account for over one half of the vehicle cost, with the vehicle range determined by the capacity (and thus cost) of the battery pack as well. An increase in vehicle range would therefore result in a significant increase in battery pack cost, and vice versa. In addition, the relationship between overall vehicle mass and total range further inversely couples vehicle cost and range. It is apparent then that a fundamental trade-off will always exist between the two parameters, unless an additional factor is added to decouple the direct relationship between them. This study analytically investigates the aforementioned relationships unique to battery-electric vehicles and proposes inductively coupled power transfer (ICPT) as a potential solution and decoupling method for the vehicle range - vehicle cost relationship.

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OpenAlex reports 5 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

As battery-electric vehicle technology advances as a viable alternative to internal combustion engine vehicles, consumer acceptance becomes a critical factor for the future of these vehicles, with driving range and vehicle cost being the preeminent parameters of concern. Unique to battery-electric vehicles is the direct inverse relationship between these parameters. Battery pack costs often account for over one half of the vehicle cost, with the vehicle range determined by the capacity (and thus cost) of the battery pack as well. An increase in vehicle range would therefore result in a significant increase in battery pack cost, and vice versa. In addition, the relationship between overall vehicle mass and total range further inversely couples vehicle cost and range. It is apparent then that a fundamental trade-off will always exist between the two parameters, unless an additional factor is added to decouple the direct relationship between them. This study analytically investigates the aforementioned relationships unique to battery-electric vehicles and proposes inductively coupled power transfer (ICPT) as a potential solution and decoupling method for the vehicle range - vehicle cost relationship.

Key concepts: Electric vehicle, Automotive engineering, Driving range, Battery (electricity), Battery pack, Decoupling (probability), Range (aeronautics), Maximum power transfer theorem

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